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Measurement of nanoindentation properties of polymers considering adhesion effects between AFM sharp indenter and material

机译:考虑AFM尖锐压模和材料的粘附效应的聚合物的纳米凸缘性能测量

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摘要

Nanomechanical properties of polymer samples were calculated using an adhesive contact model appropriate for AFM indentation problems. A series of Polydimethylsiloxane (PDMS) samples were indented by the sharp indenter in the air by using an AFM, and dozens of the force-displacement curves of each sample were obtained. An adhesive contact model suitable for sharp indentation with adhesion was established based on the same assumptions of the JKR model which is only suitable for spherical indentation at small penetration depth. Differences between sharp indentation problems with and without adhesion were discussed, and the limitations of the traditional adhesion model were given. The elastic modulus was obtained by fitting experimental force-displacement curves with theoretical ones, and results were compared to those macroscopic values in literature. The adhesion energy between the indenter and the sample surface was accurately calculated using the adhesion model based on the calculated elastic modulus. The influence of the indenter tip angle on the calculation results of the elastic modulus was also discussed theoretically. In this study, the mechanical properties of polymer samples were calculated at the nanoscale considering the adhesion effect.
机译:使用适合于AFM压痕问题的粘合性接触模型计算聚合物样品的纳米力学性质。通过使用AFM,通过空气中的尖锐压痕缩进一系列聚二甲基硅氧烷(PDMS)样品,获得每个样品的数十个力 - 位移曲线。基于JKR模型的相同假设建立了适用于粘附性粘附的粘合剂触点模型,其仅适用于小穿透深度的球形压痕。讨论了尖锐压痕问题的差异,并且讨论了没有粘附的差异,并给出了传统粘合模型的局限性。通过拟合具有理论上的实验力 - 位移曲线获得的弹性模量,并将结果与​​文献中的那些宏观值进行比较。使用基于计算的弹性模量的粘合模型精确地计算压痕和样品表面之间的粘合能量。在理论上还讨论了压痕尖角对弹性模量的计算结果的影响。在该研究中,考虑到粘合效果,在纳米级计算聚合物样品的机械性能。

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